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Heterogeneous expression of invasive and metastatic properties in a prostate tumor model

机译:前列腺肿瘤模型中侵袭和转移特性的异质表达

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Cellular heterogeneity of neoplasia is well demonstrated in the Dunning R-3327 rat prostate adenocarcinoma. In this study, we measured the differential expression of invasive and metastatic properties of this prostate model by cloning from a heterogeneous parental cell line. Four cell clones were derived and characterized by morphological studies, E-cadherin expression, and invasive and metastatic potential. Three of the clones (clones 5′A, 5′C, and 5′D) demonstrated a fibroblastic morphology and were anchored to the substrate by loose microvillous processes. The fourth clone (clone 5′B) grew in tight clusters and displayed many closely spaced microvilli, long overlapping cytoplasmic regions with well-defined junctional complexes. The parental line (R3327-5′) demonstrated a combination of both these growth patterns. E-cadherin expression was absent in clones 5′A, 5′C, and 5′D and very prominent in clone 5′B, when compared to the parental line. The absence of E-cadherin expression correlated with increased invasiveness, as measured in an in vitro invasion assay. Subcutaneous injections of clones 5′A, 5′C, and 5′D yielded lung metastases and no primary tumors at the site of inoculation while clone 5′B was tumorigenic and produced fewer lung metastases in vivo. These clones, therefore, provide a potential for studying a variety of molecules involved in prostate cancer invasion and metastasis, especially for the direct testing of the significance of E-cadherin expresssion in prostate cancer progression.
机译:在Dunning R-3327大鼠前列腺腺癌中充分证明了瘤形成的细胞异质性。在这项研究中,我们通过从异种亲代细胞系克隆来测量此前列腺模型的侵袭和转移特性的差异表达。衍生出四个细胞克隆,并通过形态学研究,E-钙黏着蛋白表达以及侵袭和转移潜力对其进行了表征。其中三个克隆(克隆5'A,5'C和5'D)表现出成纤维细胞形态,并通过松散的微毛过程锚定在基质上。第四个克隆(克隆5'B)生长在紧密的簇中,并显示出许多紧密间隔的微绒毛,长重叠的胞质区域,具有明确的连接复合物。亲本系(R3327-5')显示了这两种生长方式的组合。与亲本系相比,克隆5'A,5'C和5'D中不存在E-钙粘蛋白表达,而在克隆5'B中则非常突出。如在体外侵袭测定中所测量的,E-钙粘着蛋白表达的缺乏与侵袭性增加相关。皮下注射克隆5'A,5'C和5'D产生肺转移,在接种部位没有原发性肿瘤,而克隆5'B具有致癌性,并且在体内产生的肺转移较少。因此,这些克隆为研究与前列腺癌的侵袭和转移有关的多种分子提供了潜力,尤其是直接检测E-钙粘蛋白表达在前列腺癌进展中的意义。

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